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Samet Ünsal

Publications and source records attributed to Samet Ünsal.

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The Quantum State Continuity Problem and Temporal Enforcement Against Fork Attacks

We introduce the Quantum State Continuity Problem (QSCP), a security objective orthogonal to identity authentication that captures whether a systems current execution is a legitimate continuation of a unique past execution. We show that classical and stateless quantum authentication mechanisms fail to enforce continuity and remain vulnerable to fork attacks. To address this gap, we propose the Quantum State Continuity Witness (QSCW), a minimal quantum-assisted primitive that enforces temporal linkage of execution through stateful quantum evolution and cumulative auditing. Using a GHZ-based toy instantiation and extensive simulation, we demonstrate that temporal enforcement suppresses fork attacks with exponential decay in success probability, while remaining robust to noise and system parameters. Our results highlight execution continuity as a distinct and underexplored dimension of system security.

quant-ph

A Comparative Performance Evaluation of Kyber, sntrup761, and FrodoKEM for Post-Quantum Cryptography

Post-quantum cryptography (PQC) aims to develop cryptographic algorithms that are secure against attacks from quantum computers. This paper compares the leading postquantum cryptographic algorithms, such as Kyber, sntrup761, and FrodoKEM, in terms of their security, performance, and real-world applicability. The review highlights the strengths and weaknesses of each algorithm and provides insights into future research directions. We also discuss the challenges of transitioning from classical to post-quantum systems and the potential impacts on various industries. This paper serves as a foundation for understanding the current state of post-quantum cryptography and its future prospects in the quantum computing era.

cs.CR